IEEE Trans Ultrason Ferroelectr Freq Control. 2018 Dec;65(12):2407-2417. doi: 10.1109/TUFFC.2018.2878464. Epub 2018 Oct 29.
Switched excitation has the potential to improve on the cost, efficiency, and size of the linear amplifier circuitry currently used in high-intensity focused ultrasound (HIFU) systems. Existing switching schemes are impaired by high harmonic distortion or lack array apodisation capability, so require adjustable supplies and/or large power filters to be useful. A multilevel pulsewidth modulation (PWM) topology could address both of these issues but the switching-speed limitations of transistors mean that there are a limited number of pulses available in each waveform cycle. In this study, harmonic reduction PWM (HRPWM) is proposed as an algorithmic solution to the design of switched waveforms. Its appropriateness for HIFU was assessed by design of a high power five-level unfiltered amplifier and subsequent thermal-only lesioning of ex vivo chicken breast. Three switched waveforms of different electrical powers (16, 26, 35 W) were generated using the HRPWM algorithm. Lesion sizes were measured and compared with those made at the same electrical power using a linear amplifier and bi-level excitation. HRPWM produced symmetric, thermal-only lesions that were the same size as their linear amplifier equivalents ( ). At 16 W, bi-level excitation produced smaller lesions but at higher power levels large transients in the acoustic waveform nucleated undesired cavitation. These results demonstrate that HRPWM can minimize HIFU drive circuity size without the need for filters to remove harmonics or adjustable power supplies to achieve array apodisation.
切换激励有可能改善目前高强度聚焦超声(HIFU)系统中线性放大器电路的成本、效率和尺寸。现有的开关方案受到高谐波失真或缺乏阵列变迹能力的影响,因此需要可调电源和/或大型功率滤波器才能发挥作用。多电平脉冲宽度调制(PWM)拓扑结构可以解决这两个问题,但晶体管的开关速度限制意味着每个波形周期中可用的脉冲数量有限。在本研究中,谐波降低 PWM(HRPWM)被提出作为开关波形设计的算法解决方案。通过设计高功率五电平无滤波器放大器以及随后对离体鸡胸肉进行仅热损伤来评估其在 HIFU 中的适用性。使用 HRPWM 算法生成了三种不同功率(16、26、35 W)的开关波形。测量了损伤大小,并与使用线性放大器和双电平激励在相同功率下产生的损伤大小进行了比较。HRPWM 产生了对称的、仅热损伤,其大小与线性放大器等效物相同()。在 16 W 时,双电平激励产生的损伤较小,但在更高的功率水平下,声波形中的大瞬态会引发不需要的空化。这些结果表明,HRPWM 可以最小化 HIFU 驱动电路的尺寸,而无需使用滤波器去除谐波或可调电源来实现阵列变迹。